TY - GEN
T1 - Robust Capon Beamforming for UAV-Borne Distributed Phased-MIMO Array Radar
AU - Li, Chang
AU - Wang, Xiangrong
AU - Zhai, Weitong
AU - Greco, Maria S.
AU - Gini, Fulvio
N1 - Publisher Copyright:
© 2025 IEEE.
PY - 2025
Y1 - 2025
N2 - Unmanned aerial vehicles (UAVs) swarm, with each UAV equipped with a phased array, can form an extremely large distributed radar array, thus achieving high spatial resolution and improved detection performance. The most critical challenge for UAV-borne distributed array is that the inevitable platform jitter and drift cause positional perturbation, in turn degrading the array performance. To counteract this issue, this paper analyzes the positional perturbations in UAV-borne distributed phased multiple-input multiple-output (phased-MIMO) array radar and proposes a robust Capon beamformer. Specifically, by exploiting the group positional perturbation structure in the virtual array formed via matched filtering of phased-MIMO array, we propose a robust Capon beamformer seeking to maximize the beamformer output signal power regardless of UAVs positional perturbations. A Dinkelbach-based algorithm combined with modified semidefinite relaxation (SDR) and rankone approximation is employed to iteratively solve the formulated non-convex fractional quadratically constrained quadratic programming (FQCQP) problem. Numerical simulations validate the superior robustness of the proposed beamformer in handling group positional perturbations caused by UAV platform.
AB - Unmanned aerial vehicles (UAVs) swarm, with each UAV equipped with a phased array, can form an extremely large distributed radar array, thus achieving high spatial resolution and improved detection performance. The most critical challenge for UAV-borne distributed array is that the inevitable platform jitter and drift cause positional perturbation, in turn degrading the array performance. To counteract this issue, this paper analyzes the positional perturbations in UAV-borne distributed phased multiple-input multiple-output (phased-MIMO) array radar and proposes a robust Capon beamformer. Specifically, by exploiting the group positional perturbation structure in the virtual array formed via matched filtering of phased-MIMO array, we propose a robust Capon beamformer seeking to maximize the beamformer output signal power regardless of UAVs positional perturbations. A Dinkelbach-based algorithm combined with modified semidefinite relaxation (SDR) and rankone approximation is employed to iteratively solve the formulated non-convex fractional quadratically constrained quadratic programming (FQCQP) problem. Numerical simulations validate the superior robustness of the proposed beamformer in handling group positional perturbations caused by UAV platform.
KW - Robust Capon beamforming
KW - UAV-borne distributed array
KW - phased-MIMO Radar
KW - positional perturbation
UR - https://www.scopus.com/pages/publications/105022432733
U2 - 10.1109/RadarConf2559087.2025.11204921
DO - 10.1109/RadarConf2559087.2025.11204921
M3 - 会议稿件
AN - SCOPUS:105022432733
T3 - Proceedings of the IEEE Radar Conference
SP - 1594
EP - 1599
BT - Proceedings of the 2025 IEEE Radar Conference, RadarConf 2025
A2 - Rupniewski, Marek
A2 - Blunt, Shannon
A2 - Misiurewicz, Jacek
A2 - Greco, Maria Sabrina
A2 - Himed, Braham
PB - Institute of Electrical and Electronics Engineers
T2 - 2025 IEEE Radar Conference, RadarConf 2025
Y2 - 4 October 2025 through 9 October 2025
ER -